mirror of
https://gitlab.freedesktop.org/cairo/cairo.git
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392 lines
11 KiB
C
392 lines
11 KiB
C
/*
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* Copyright 2010 Intel Corporation
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*
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* Permission is hereby granted, free of charge, to any person
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* obtaining a copy of this software and associated documentation
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* files (the "Software"), to deal in the Software without
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* restriction, including without limitation the rights to use, copy,
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* modify, merge, publish, distribute, sublicense, and/or sell copies
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* of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be
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* included in all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
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* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
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* BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
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* ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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* CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*
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* Author: Chris Wilson <chris@chris-wilson.co.uk>
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*/
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#include "cairo-test.h"
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/* Test the fidelity of the rasterisation, because Cairo is my favourite
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* driver test suite.
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*/
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#define GENERATE_REFERENCE 0
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#define WIDTH 256
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#define HEIGHT 40
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#include "../src/cairo-fixed-type-private.h"
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#define PRECISION (1 << CAIRO_FIXED_FRAC_BITS)
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/* XXX beware multithreading! */
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static uint32_t state;
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static uint32_t
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hars_petruska_f54_1_random (void)
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{
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#define rol(x,k) ((x << k) | (x >> (32-k)))
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return state = (state ^ rol (state, 5) ^ rol (state, 24)) + 0x37798849;
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#undef rol
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}
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static double
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random_offset (int range, int precise)
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{
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double x = hars_petruska_f54_1_random() / (double) UINT32_MAX * range / WIDTH;
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if (precise)
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x = floor (x * PRECISION) / PRECISION;
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return x;
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}
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static cairo_test_status_t
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rectangles (cairo_t *cr, int width, int height)
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{
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int x, y, channel;
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state = 0x12345678;
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cairo_set_source_rgb (cr, 0.0, 0.0, 0.0);
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cairo_paint (cr);
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#if GENERATE_REFERENCE
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for (x = 0; x < WIDTH; x++) {
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cairo_set_source_rgba (cr, 1, 1, 1, x * x * 1.0 / (WIDTH * WIDTH));
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cairo_rectangle (cr, x, 0, 1, HEIGHT);
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cairo_fill (cr);
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}
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#else
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cairo_set_operator (cr, CAIRO_OPERATOR_ADD);
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for (channel = 0; channel < 3; channel++) {
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switch (channel) {
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default:
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case 0: cairo_set_source_rgb (cr, 1.0, 0.0, 0.0); break;
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case 1: cairo_set_source_rgb (cr, 0.0, 1.0, 0.0); break;
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case 2: cairo_set_source_rgb (cr, 0.0, 0.0, 1.0); break;
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}
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for (x = 0; x < WIDTH; x++) {
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for (y = 0; y < HEIGHT; y++) {
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double dx = random_offset (WIDTH - x, TRUE);
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double dy = random_offset (WIDTH - x, TRUE);
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cairo_rectangle (cr, x + dx, y + dy, x / (double) WIDTH, x / (double) WIDTH);
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}
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}
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cairo_fill (cr);
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}
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#endif
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return CAIRO_TEST_SUCCESS;
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}
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static cairo_test_status_t
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intersecting_quads (cairo_t *cr, int width, int height)
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{
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int x, y, channel;
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state = 0x12345678;
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cairo_set_source_rgb (cr, 0.0, 0.0, 0.0);
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cairo_paint (cr);
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#if GENERATE_REFERENCE
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for (x = 0; x < WIDTH; x++) {
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cairo_set_source_rgba (cr, 1, 1, 1, x * x * 0.5 / (WIDTH * WIDTH));
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cairo_rectangle (cr, x, 0, 1, HEIGHT);
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cairo_fill (cr);
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}
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#else
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cairo_set_operator (cr, CAIRO_OPERATOR_ADD);
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for (channel = 0; channel < 3; channel++) {
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switch (channel) {
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default:
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case 0: cairo_set_source_rgb (cr, 1.0, 0.0, 0.0); break;
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case 1: cairo_set_source_rgb (cr, 0.0, 1.0, 0.0); break;
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case 2: cairo_set_source_rgb (cr, 0.0, 0.0, 1.0); break;
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}
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for (x = 0; x < WIDTH; x++) {
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double step = x / (double) WIDTH;
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for (y = 0; y < HEIGHT; y++) {
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double dx = random_offset (WIDTH - x, TRUE);
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double dy = random_offset (WIDTH - x, TRUE);
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cairo_move_to (cr, x + dx, y + dy);
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cairo_rel_line_to (cr, step, step);
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cairo_rel_line_to (cr, 0, -step);
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cairo_rel_line_to (cr, -step, step);
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cairo_close_path (cr);
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}
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}
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cairo_fill (cr);
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}
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#endif
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return CAIRO_TEST_SUCCESS;
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}
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static cairo_test_status_t
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intersecting_triangles (cairo_t *cr, int width, int height)
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{
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int x, y, channel;
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state = 0x12345678;
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cairo_set_source_rgb (cr, 0.0, 0.0, 0.0);
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cairo_paint (cr);
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#if GENERATE_REFERENCE
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for (x = 0; x < WIDTH; x++) {
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cairo_set_source_rgba (cr, 1, 1, 1, x * 0.75 / WIDTH);
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cairo_rectangle (cr, x, 0, 1, HEIGHT);
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cairo_fill (cr);
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}
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#else
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cairo_set_operator (cr, CAIRO_OPERATOR_ADD);
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for (channel = 0; channel < 3; channel++) {
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switch (channel) {
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default:
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case 0: cairo_set_source_rgb (cr, 1.0, 0.0, 0.0); break;
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case 1: cairo_set_source_rgb (cr, 0.0, 1.0, 0.0); break;
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case 2: cairo_set_source_rgb (cr, 0.0, 0.0, 1.0); break;
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}
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for (x = 0; x < WIDTH; x++) {
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double step = x / (double) WIDTH;
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for (y = 0; y < HEIGHT; y++) {
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double dx = random_offset (WIDTH - x, TRUE);
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double dy = random_offset (WIDTH - x, TRUE);
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/* left */
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cairo_move_to (cr, x + dx, y + dy);
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cairo_rel_line_to (cr, 0, step);
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cairo_rel_line_to (cr, step, 0);
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cairo_close_path (cr);
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/* right, mirrored */
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cairo_move_to (cr, x + dx + step, y + dy + step);
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cairo_rel_line_to (cr, 0, -step);
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cairo_rel_line_to (cr, -step, step);
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cairo_close_path (cr);
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}
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}
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cairo_fill (cr);
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}
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#endif
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return CAIRO_TEST_SUCCESS;
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}
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static cairo_test_status_t
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triangles (cairo_t *cr, int width, int height)
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{
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int x, y, channel;
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state = 0x12345678;
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cairo_set_source_rgb (cr, 0.0, 0.0, 0.0);
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cairo_paint (cr);
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#if GENERATE_REFERENCE
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for (x = 0; x < WIDTH; x++) {
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cairo_set_source_rgba (cr, 1, 1, 1, x * x * 0.5 / (WIDTH * WIDTH));
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cairo_rectangle (cr, x, 0, 1, HEIGHT);
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cairo_fill (cr);
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}
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#else
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cairo_set_operator (cr, CAIRO_OPERATOR_ADD);
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for (channel = 0; channel < 3; channel++) {
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switch (channel) {
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default:
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case 0: cairo_set_source_rgb (cr, 1.0, 0.0, 0.0); break;
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case 1: cairo_set_source_rgb (cr, 0.0, 1.0, 0.0); break;
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case 2: cairo_set_source_rgb (cr, 0.0, 0.0, 1.0); break;
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}
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for (x = 0; x < WIDTH; x++) {
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for (y = 0; y < HEIGHT; y++) {
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double dx = random_offset (WIDTH - x, TRUE);
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double dy = random_offset (WIDTH - x, TRUE);
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cairo_move_to (cr, x + dx, y + dy);
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cairo_rel_line_to (cr, x / (double) WIDTH, 0);
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cairo_rel_line_to (cr, 0, x / (double) WIDTH);
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cairo_close_path (cr);
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}
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}
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cairo_fill (cr);
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}
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#endif
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return CAIRO_TEST_SUCCESS;
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}
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static cairo_test_status_t
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column_triangles (cairo_t *cr, int width, int height)
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{
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int x, y, i, channel;
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state = 0x12345678;
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cairo_set_source_rgb (cr, 0.0, 0.0, 0.0);
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cairo_paint (cr);
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#if GENERATE_REFERENCE
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for (x = 0; x < WIDTH; x++) {
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cairo_set_source_rgba (cr, 1, 1, 1, x * 0.5 / WIDTH);
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cairo_rectangle (cr, x, 0, 1, HEIGHT);
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cairo_fill (cr);
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}
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#else
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cairo_set_operator (cr, CAIRO_OPERATOR_ADD);
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for (channel = 0; channel < 3; channel++) {
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switch (channel) {
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default:
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case 0: cairo_set_source_rgb (cr, 1.0, 0.0, 0.0); break;
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case 1: cairo_set_source_rgb (cr, 0.0, 1.0, 0.0); break;
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case 2: cairo_set_source_rgb (cr, 0.0, 0.0, 1.0); break;
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}
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for (x = 0; x < WIDTH; x++) {
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double step = x / (double) (2 * WIDTH);
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for (y = 0; y < HEIGHT; y++) {
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for (i = 0; i < PRECISION; i++) {
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double dy = random_offset (WIDTH - x, FALSE);
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/*
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* We want to test some sharing of edges to further
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* stress the rasterisers, so instead of using one
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* tall triangle, it is split into two, with vertical
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* edges on either side that may co-align with their
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* neighbours:
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*
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* --- . ---
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* 1 / | |\ |
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* / 2x | | \ |
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* --- .... | 1 / x
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* \ | |
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* \| |
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* . ---
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*/
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cairo_move_to (cr, x + i / (double) PRECISION, y + dy);
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cairo_rel_line_to (cr, 0, step);
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cairo_rel_line_to (cr, 1 / (double) PRECISION, step);
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cairo_rel_line_to (cr, 0, -step);
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cairo_close_path (cr);
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}
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cairo_fill (cr); /* do these per-pixel due to the extra volume of edges */
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}
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}
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}
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#endif
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return CAIRO_TEST_SUCCESS;
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}
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static cairo_test_status_t
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row_triangles (cairo_t *cr, int width, int height)
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{
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int x, y, i, channel;
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state = 0x12345678;
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cairo_set_source_rgb (cr, 0.0, 0.0, 0.0);
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cairo_paint (cr);
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#if GENERATE_REFERENCE
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for (x = 0; x < WIDTH; x++) {
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cairo_set_source_rgba (cr, 1, 1, 1, x * 0.5 / WIDTH);
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cairo_rectangle (cr, x, 0, 1, HEIGHT);
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cairo_fill (cr);
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}
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#else
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cairo_set_operator (cr, CAIRO_OPERATOR_ADD);
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for (channel = 0; channel < 3; channel++) {
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switch (channel) {
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default:
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case 0: cairo_set_source_rgb (cr, 1.0, 0.0, 0.0); break;
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case 1: cairo_set_source_rgb (cr, 0.0, 1.0, 0.0); break;
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case 2: cairo_set_source_rgb (cr, 0.0, 0.0, 1.0); break;
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}
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for (x = 0; x < WIDTH; x++) {
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double step = x / (double) (2 * WIDTH);
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for (y = 0; y < HEIGHT; y++) {
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for (i = 0; i < PRECISION; i++) {
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double dx = random_offset (WIDTH - x, FALSE);
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/* See column_triangles() for a transposed description
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* of this geometry.
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*/
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cairo_move_to (cr, x + dx, y + i / (double) PRECISION);
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cairo_rel_line_to (cr, step, 0);
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cairo_rel_line_to (cr, step, 1 / (double) PRECISION);
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cairo_rel_line_to (cr, -step, 0);
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cairo_close_path (cr);
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}
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cairo_fill (cr); /* do these per-pixel due to the extra volume of edges */
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}
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}
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}
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#endif
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return CAIRO_TEST_SUCCESS;
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}
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CAIRO_TEST (coverage_rectangles,
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"Check the fidelity of the rasterisation.",
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NULL, /* keywords */
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"target=raster slow", /* requirements */
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WIDTH, HEIGHT,
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NULL, rectangles)
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CAIRO_TEST (coverage_intersecting_quads,
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"Check the fidelity of the rasterisation.",
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NULL, /* keywords */
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"target=raster slow", /* requirements */
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WIDTH, HEIGHT,
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NULL, intersecting_quads)
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CAIRO_TEST (coverage_intersecting_triangles,
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"Check the fidelity of the rasterisation.",
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NULL, /* keywords */
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"target=raster slow", /* requirements */
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WIDTH, HEIGHT,
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NULL, intersecting_triangles)
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CAIRO_TEST (coverage_row_triangles,
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"Check the fidelity of the rasterisation.",
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NULL, /* keywords */
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"target=raster slow", /* requirements */
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WIDTH, HEIGHT,
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NULL, row_triangles)
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CAIRO_TEST (coverage_column_triangles,
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"Check the fidelity of the rasterisation.",
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NULL, /* keywords */
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"target=raster slow", /* requirements */
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WIDTH, HEIGHT,
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NULL, column_triangles)
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CAIRO_TEST (coverage_triangles,
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"Check the fidelity of the rasterisation.",
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NULL, /* keywords */
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"target=raster slow", /* requirements */
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WIDTH, HEIGHT,
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NULL, triangles)
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